A Pozza, A Martel, M Moir, T A Darwish, K Wimalan, A Koutsioubas, S Combet, F Bonneté
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引用次数: 0
摘要
在这项研究中,我们研究了整体膜蛋白shu在溶液中的洗涤剂诱导行为,重点研究了它与辛烷基聚氧乙烯(OPOE)和正十二烷基-β- d -麦芽糖苷(DDM)的相互作用。结合多角度光散射(SEC-MALS)和小角度散射技术(SAXS和SANS),我们提供了不同条件下蛋白质-洗涤剂复合物(PDC)行为的详细表征。我们的研究结果表明,在1%的OPOE中,舒亚仍然是单体,而在0.5 mM的DDM中,舒亚经历了一个可逆的单体/二聚体平衡,随着DDM浓度增加到7.5 mM,舒亚转变为单分散的单体状态,这突出了洗涤剂类型和浓度对蛋白质胶体稳定性的显著影响。这些发现对膜蛋白纯化和结构研究具有直接意义,特别是在结晶和低温电镜样品制备方面。该研究强调了优化洗涤剂条件的必要性,以确保单分散性和结构完整性,防止洗涤剂引起的可能影响结构解释的伪影。重要的是,我们的研究结果强调了SEC- mals技术在确定寡聚物或缔合平衡状态,检测传统SEC中经常被忽视的弱分子间相互作用方面的能力,并且即使在特别复杂的MPs情况下也能实现这一点。通过整合先进的散射技术,这项工作为MP胶体行为提供了有价值的见解,改进了结构表征策略,并为生化和生物物理研究中优化洗涤剂条件提供了框架。
Unraveling ShuA detergent-induced colloidal behavior in solution: A comprehensive SEC-MALS, SAXS, and SANS study.
In this study, we investigate the detergent-induced behavior of the integral membrane protein ShuA in solution, focusing on its interactions with octyl polyoxyethylene (OPOE) and n-dodecyl-β-D-maltoside (DDM). Using a combination of size-exclusion chromatography coupled with multi-angle light scattering (SEC-MALS) and small-angle scattering techniques (SAXS and SANS), we provide a detailed characterization of the protein-detergent complex (PDC) behavior under varying conditions. Our results reveal that ShuA remains monomeric in 1% OPOE, whereas in 0.5 mM DDM, it undergoes a reversible monomer/dimer equilibrium that shifts towards a monodisperse, monomeric state with increasing DDM concentration to 7.5 mM, highlighting the significant influence of detergent type and concentration on protein colloidal stability. These findings have direct implications for membrane protein purification and structural studies, particularly in crystallization and cryo-EM sample preparation. The study emphasizes the necessity of optimizing detergent conditions to ensure monodispersity and structural integrity, preventing detergent-induced artifacts that could affect structural interpretations. Importantly, our results highlight the power of the SEC-MALS technique in determining oligomeric or association equilibrium states, detecting weak intermolecular interactions often overlooked in conventional SEC, and achieving this even in the particularly complex case of MPs. By integrating advanced scattering techniques, this work contributes valuable insights into MP colloidal behavior, refining strategies for structural characterization and providing a framework for optimizing detergent conditions in biochemical and biophysical studies.
期刊介绍:
Protein Science, the flagship journal of The Protein Society, is a publication that focuses on advancing fundamental knowledge in the field of protein molecules. The journal welcomes original reports and review articles that contribute to our understanding of protein function, structure, folding, design, and evolution.
Additionally, Protein Science encourages papers that explore the applications of protein science in various areas such as therapeutics, protein-based biomaterials, bionanotechnology, synthetic biology, and bioelectronics.
The journal accepts manuscript submissions in any suitable format for review, with the requirement of converting the manuscript to journal-style format only upon acceptance for publication.
Protein Science is indexed and abstracted in numerous databases, including the Agricultural & Environmental Science Database (ProQuest), Biological Science Database (ProQuest), CAS: Chemical Abstracts Service (ACS), Embase (Elsevier), Health & Medical Collection (ProQuest), Health Research Premium Collection (ProQuest), Materials Science & Engineering Database (ProQuest), MEDLINE/PubMed (NLM), Natural Science Collection (ProQuest), and SciTech Premium Collection (ProQuest).